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Anti-Eavesdropping Scheme Based on Quadrature Spatial Modulation

机译:基于正交空间调制的防窃听方案

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To resist the passive eavesdropping while reserving the same hardware cost and receiver structure of the legitimate receiver, a secure quadrature spatial modulation (QSM) scheme is proposed in this letter. Instead of the information symbol, a mixture of the information symbol and artificial noise is transmitted through the activated transmit antennas. The mixed signals are designed, so that the artificial noise is cancelled at the legitimate receiver but cause random interference to the eavesdropper. The secrecy rate is analyzed and the optimal power allocation between the artificial noise and the information signal is investigated. The influence of the number of the eavesdropper’s antennas is discussed. Simulation results show that, for multiple-input-single-output systems, the proposed secure QSM scheme achieves the best secrecy performance among the existing similar schemes by using less radio frequency chains. For multiple-input-multiple-output systems, the secure QSM scheme performs better than the existing secure SM scheme does under the same power constraint and transmission rate.
机译:为了在保留合法接收器相同的硬件成本和接收器结构的同时抵制被动窃听,本文提出了一种安全的正交空间调制(QSM)方案。代替信息符号,信息符号和人工噪声的混合物通过激活的发射天线发射。设计了混合信号,以便在合法接收器处消除人为噪声,但会对窃听者造成随机干扰。分析了保密率,研究了人工噪声与信息信号之间的最优功率分配。讨论了窃听者天线数量的影响。仿真结果表明,对于多输入单输出系统,所提出的安全QSM方案通过使用较少的射频链,可以在现有类似方案中实现最佳的保密性能。对于多输入多输出系统,在相同的功率约束和传输速率下,安全QSM方案的性能要优于现有的安全SM方案。

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